ArticleChinese medical journal2026
Androgen receptors protect against thoracic aortic dissection via inhibiting ferroptosis of vascular smooth muscle cells in male patients.
Article in Chinese medical journal, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 2 papers.
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2 citing papers in PubMed.
- Iron, Copper, and Zinc Dyshomeostasis in Cardiovascular and Cerebrovascular Diseases: Redox Mechanisms, Evidence Levels, and Translational Prospects.International journal of molecular sciences · 2026Review
- Degradation of ACSL3 by influenza A virus shifts unfolded protein response from antiviral defense to viral evasion.Virologica Sinica · 2026Article
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17 authors.
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Abstract
backgroundThe development of thoracic aortic dissection (TAD) is closely associated with the loss of vascular smooth muscle cells (VSMCs). Androgen receptor (AR) signaling has increasingly been recognized as an important regulator of cell death in prostate cancer. However, the role of AR signaling in the development of TAD in men remains unknown.
methodsThe expression of AR was analyzed in clinical specimens obtained from TAD patients undergoing surgical aortic replacement and control subjects receiving heart transplantation. Using β-aminopropionitrile (BAPN)-induced aortic dissection mouse models, we systematically investigated the protective role of AR through multiple approaches. Histopathological evaluation was performed using immunohistochemistry and immunofluorescence. Primary vascular smooth muscle cells were isolated for functional studies including AR knockdown, ferroptosis assessment, and metabolic profiling. Mechanistic insights were gained through chromatin immunoprecipitation, luciferase reporter assays, and RNA stability tests. Seahorse extracellular flux analysis and targeted metabolomics were employed to characterize metabolic alterations.
resultsThe expression of AR in VSMCs was downregulated in both clinical samples and animal models of TAD. Using in vitro and in vivo models, we demonstrated a novel function of AR that inhibited ferroptosis in VSMC by promoting excessive lipid peroxidation. Mechanistically, we showed that AR counter-regulated the expression levels of acyl-CoA synthetases ACSL3 and ACSL4 in VSMCs. AR acted as a transcriptional regulator to promote the transcription of ACSL3 gene while inhibiting the transcription of the ACSL4 gene, both of which inhibited lipid peroxidation and ferroptosis. Importantly, activating AR signaling was beneficial in preventing TAD from developing and progressing in the animal model.
conclusionsOur results reveal a previously unrecognized role of AR in TAD pathogenesis and uncover the opposite yet complementary regulation of ACSL3/ACSL4 levels involved in lipid peroxidation-driven ferroptosis in VSMCs.
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